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Power Law and Exponential Decay of Intercontact Times between Mobile Devices

机译:功率定律和移动设备之间的相互接触时间的指数衰减

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We examine the fundamental properties that determine the basic performance metrics for opportunistic communications. We first consider the distribution of intercontact times between mobile devices. Using a diverse set of measured mobility traces, we find as an invariant property that there is a characteristic time, order of half a day, beyond which the distribution decays exponentially. Up to this value, the distribution in many cases follows a power law, as shown in recent work. This power law finding was previously used to support the hypothesis that intercontact time has a power law tail, and that common mobility models are not adequate. However, we observe that the timescale of interest for opportunistic forwarding may be of the same order as the characteristic time, and thus, the exponential tail is important. We further show that already simple models such as random walk and random waypoint can exhibit the same dichotomy in the distribution of intercontact time as in empirical traces. Finally, we perform an extensive analysis of several properties of human mobility patterns across several dimensions, and we present empirical evidence that the return time of a mobile device to its favorite location site may already explain the observed dichotomy. Our findings suggest that existing results on the performance of forwarding schemes based on power law tails might be overly pessimistic.
机译:我们研究了确定机会通信基本性能指标的基本属性。我们首先考虑移动设备之间的交互时间分布。通过使用一组不同的测得的迁移率迹线,我们发现不变的特性是有特征性的时间(半天量级),超过该时间,分布呈指数衰减。达到这个值,在许多情况下,分布遵循幂定律,如最近的工作所示。以前使用此幂定律发现来支持以下假设:接触时间具有幂定律尾部,并且常见的迁移率模型不足。但是,我们观察到机会转发感兴趣的时间范围可能与特征时间相同,因此,指数尾部很重要。我们进一步表明,已经很简单的模型(例如随机游走和随机航点)可以在接触时间的分布中表现出与经验痕迹相同的二分法。最后,我们对跨多个维度的人类移动性模式的若干属性进行了广泛的分析,并且我们提供了经验证据,表明移动设备返回其最喜欢的位置的时间可能已经解释了所观察到的二分法。我们的发现表明,关于基于幂律尾部的转发方案的性能的现有结果可能过于悲观。

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